subtilis spore
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Catalysts ◽  
2021 ◽  
Vol 11 (5) ◽  
pp. 606
Author(s):  
Silu Sheng ◽  
Edgardo T. Farinas

Enzymes displayed on the Bacillus subtilis spore coat have several features that are useful for biocatalysis. The enzyme is preimmobilized on an inert surface of the spore coat, which is due to the natural sporulation process. As a result, protein stability can be increased, and they are resistant to environmental changes. Next, they would not lyse under extreme conditions, such as in organic solvents. Furthermore, they can be easily removed from the reaction solution and reused. The laboratory evolved CotA laccase variant T480A-CotA was used to oxidize the following phenolic substrates: (+)-catechin, (−)-epicatechin, and sinapic acid. The kinetic parameters were determined and T480A-CotA had a greater Vmax/Km than wt-CotA for all substrates. The Vmax/Km for T480A-CotA was 4.1, 5.6, and 1.4-fold greater than wt-CotA for (+)-catechin, (−)-epicatechin, and sinapic acid, respectively. The activity of wt-CotA and T480A-CotA was measured at different concentrations from 0–70% in organic solvents (dimethyl sulfoxide, ethanol, methanol, and acetonitrile). The Vmax for T480A-CotA was observed to be greater than the wt-CotA in all organic solvents. Finally, the T480A-CotA was recycled 7 times over a 23-h period and up to 60% activity for (+)-catechin remained. The product yield was up to 3.1-fold greater than the wild-type.


Molecules ◽  
2021 ◽  
Vol 26 (4) ◽  
pp. 1186
Author(s):  
He Wang ◽  
Xiaomin Jiang ◽  
Yongchang Qian ◽  
Lianghong Yin

Bacillus subtilis spore display has become a field of increasing interest in the past two decades. To improve the efficiency of B. subtilis spore display, its directed modification was performed based on the cellulosome architecture by introducing onto them divergent cohesin (Coh) modules that can specifically bind to the target enzyme bearing the matching dockerins (Doc). In this study, five different pairs of cohesins and dockerins, selected from four cellulolytic microbes, were examined for their capabilities in displaying a tetrameric enzyme β-galactosidase from Bacillus stearothermophilus IAM11001 on the surface of B. subtilis WB600 spores. Immunofluorescence microscopy, western blotting, dot blotting, and enzyme assay was applied to confirm its surface expression. All the resultant five Coh–Doc based spore display can hydrolyze o-nitrophenyl-β-D-galactopyranoside. Further, the optimized Coh–Doc based spore display exhibited the highest display efficiency. Overall, the results of current study may open new perspectives on the use of Coh–Doc interaction, which will find application in improving the efficiency of B. subtilis spore display.


Author(s):  
Rick Ursem ◽  
Bhagyashree Swarge ◽  
Wishwas R. Abhyankar ◽  
Hansuk Buncherd ◽  
Leo J. de Koning ◽  
...  

2021 ◽  
Vol 5 (6) ◽  
pp. 1727-1733
Author(s):  
Marianna Karava ◽  
Peter Gockel ◽  
Johannes Kabisch

We suggest spore display as a simple and cost efficient strategy for the production of immobilized photodecarboxylase utilized for the conversion of oils to biofuels.


2020 ◽  
Vol 114 (6) ◽  
pp. 934-951 ◽  
Author(s):  
Carolina Freitas ◽  
Jarnaja Plannic ◽  
Rachele Isticato ◽  
Assunta Pelosi ◽  
Rita Zilhão ◽  
...  

2020 ◽  
Vol 62 ◽  
pp. 102349 ◽  
Author(s):  
Lang-Hong Wang ◽  
Taras Pyatkovskyy ◽  
Ahmed Yousef ◽  
Xin-An Zeng ◽  
Sudhir K. Sastry

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